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Published in: Fire Technology 2/2011

01-04-2011

Metrological Tool for the Characterization of Flame Fronts Based on the Coupling of a Heat Flux Approach with Image Processing Data

Authors: S. Rudz, K. Chetehouna, O. Séro-Guillaume

Published in: Fire Technology | Issue 2/2011

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Abstract

The aim of this paper is to present some improvements in the metrology of forest fire flames by coupling image processing and radiative heat flux measurement. A new metrological tool using a visual video camera and a specific multiple thermal sensors is proposed. By means of an appropriate segmentation algorithm and the Direct Linear Transformation, the image processing methodology gives the forward or the backward fire front positions as input data to a radiative heat flux approach. Using a simplified flame model, this technique provides fire front positions versus time, and average values for the flame length, flame depth, flame tilt angle, apparent flame temperature and flame emissivity. The rates of spread, obtained by a linear regression of the determined fire front positions, as well as the thermal and radiative properties of the flame, are compared favorably to those given in the literature.

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Literature
1.
go back to reference Viegas DX, Palheiro PM, Pita LP, Ribeiro LM, Cruz MG, Ollero A, Arrue B, Dios Ramiro M (2006) Analysis of fire behaviour in Mediterranean shrubs: The Gestosa fire experiments (Portugal). Forest Ecology and Management 234:S101.CrossRef Viegas DX, Palheiro PM, Pita LP, Ribeiro LM, Cruz MG, Ollero A, Arrue B, Dios Ramiro M (2006) Analysis of fire behaviour in Mediterranean shrubs: The Gestosa fire experiments (Portugal). Forest Ecology and Management 234:S101.CrossRef
2.
go back to reference Santoni PA, Simeoni A, Rossi JL, Bosseur F, Morandini F, Silvani X, Balbi JH, Cancellieri D, Rossi L (2006) Instrumentation of wildland fire: Characterisation of a fire spreading through a Mediterranean shrub. Fire Safety Journal 41:171-184.CrossRef Santoni PA, Simeoni A, Rossi JL, Bosseur F, Morandini F, Silvani X, Balbi JH, Cancellieri D, Rossi L (2006) Instrumentation of wildland fire: Characterisation of a fire spreading through a Mediterranean shrub. Fire Safety Journal 41:171-184.CrossRef
3.
go back to reference Sullivan AL (2007) Convective Froude number and Byram’s energy criterion of Australian experimental grassland fires. Proceedings of the Combustion Institute 31:2557-2564.CrossRef Sullivan AL (2007) Convective Froude number and Byram’s energy criterion of Australian experimental grassland fires. Proceedings of the Combustion Institute 31:2557-2564.CrossRef
4.
go back to reference Chetehouna K, Séro-Guillaume O, Sochet I, Degiovanni A (2008) On the experimental determination of flame front positions and of propagation parameters for a fire. International Journal of Thermal Sciences 47:1148-1157.CrossRef Chetehouna K, Séro-Guillaume O, Sochet I, Degiovanni A (2008) On the experimental determination of flame front positions and of propagation parameters for a fire. International Journal of Thermal Sciences 47:1148-1157.CrossRef
5.
go back to reference Lloret J, Garcia M, Bri D, Sendra S (2009) A Wireless Sensor Network Deployment for Rural and Forest Fire Detection and Verification. Sensors 9:8722-8747.CrossRef Lloret J, Garcia M, Bri D, Sendra S (2009) A Wireless Sensor Network Deployment for Rural and Forest Fire Detection and Verification. Sensors 9:8722-8747.CrossRef
6.
go back to reference Pastor E, Àgueda A, Andrade-Cetto J, Muñoz M, Pérez Y and Planas E (2006) Computing the rate of spread of linear flame fronts by thermal image processing. Fire Safety Journal 41:569-579.CrossRef Pastor E, Àgueda A, Andrade-Cetto J, Muñoz M, Pérez Y and Planas E (2006) Computing the rate of spread of linear flame fronts by thermal image processing. Fire Safety Journal 41:569-579.CrossRef
7.
go back to reference Martinez-de Dios JR, Arrue BC, Ollero A, Merino L, Gómez-Rodríguez F (2008) Computer vision techniques for forest fire perception. Image and Vision Computing 26:550–562.CrossRef Martinez-de Dios JR, Arrue BC, Ollero A, Merino L, Gómez-Rodríguez F (2008) Computer vision techniques for forest fire perception. Image and Vision Computing 26:550–562.CrossRef
8.
go back to reference Chetehouna K, Zarguili I, Séro-Guillaume O, Giroud F, Picard C (2008) On the two ways for the computing of the fire front positions and the rate of spread. Modelling, Monitoring and Management of Forest Fires, WIT Transactions on Ecology and the Environment 119:3–12.CrossRef Chetehouna K, Zarguili I, Séro-Guillaume O, Giroud F, Picard C (2008) On the two ways for the computing of the fire front positions and the rate of spread. Modelling, Monitoring and Management of Forest Fires, WIT Transactions on Ecology and the Environment 119:3–12.CrossRef
9.
go back to reference Chetehouna K, Séro-Guillaume O, Bernardin D (2009) Detection of the positions and computing the rate of spread of fire fronts using a radiative flame model and inverse method. In: Gomez E, Alvarez K (eds) Forest fires: detection, suppression, and prevention. Nova Science Publishers, Inc, Chapter 8. Chetehouna K, Séro-Guillaume O, Bernardin D (2009) Detection of the positions and computing the rate of spread of fire fronts using a radiative flame model and inverse method. In: Gomez E, Alvarez K (eds) Forest fires: detection, suppression, and prevention. Nova Science Publishers, Inc, Chapter 8.
10.
go back to reference Séro-Guillaume O, Ramezani S, Margerit J, Calogine D (2008) On large Scale Forest Fires Propagation Models. International Journal of Thermal Sciences 47:680-694.CrossRef Séro-Guillaume O, Ramezani S, Margerit J, Calogine D (2008) On large Scale Forest Fires Propagation Models. International Journal of Thermal Sciences 47:680-694.CrossRef
11.
go back to reference Rudz S, Chetehouna K, Séro-Guillaume O, Pastor E, Planas E (2009) Comparison of two methods for estimating fire positions and the rate of spread of linear flame fronts. Measurement Science and Technology 20:10 pp. Rudz S, Chetehouna K, Séro-Guillaume O, Pastor E, Planas E (2009) Comparison of two methods for estimating fire positions and the rate of spread of linear flame fronts. Measurement Science and Technology 20:10 pp.
12.
go back to reference Siegel R, Howell J (2002) Thermal radiation heat transfer, 4th edn. Taylor & Francis, New York. Siegel R, Howell J (2002) Thermal radiation heat transfer, 4th edn. Taylor & Francis, New York.
13.
go back to reference Ko BC, Cheong KH, Nam JY (2009) Fire detection based on vision sensor and support vector machines. Fire Safety Journal 44:322-329.CrossRef Ko BC, Cheong KH, Nam JY (2009) Fire detection based on vision sensor and support vector machines. Fire Safety Journal 44:322-329.CrossRef
14.
go back to reference Rudz S, Chetehouna K, Hafiane A, Séro-Guillaume O, Laurent H (2009) On the evaluation of segmentation methods for wildland fire. In: Blanc-Talon J et al (ed), LNCS 5807:12–23. Rudz S, Chetehouna K, Hafiane A, Séro-Guillaume O, Laurent H (2009) On the evaluation of segmentation methods for wildland fire. In: Blanc-Talon J et al (ed), LNCS 5807:12–23.
15.
go back to reference Orfanidis SJ (1996) Introduction to Signal Processing, Prentice-Hall, Englewood Cliffs, NJ. Orfanidis SJ (1996) Introduction to Signal Processing, Prentice-Hall, Englewood Cliffs, NJ.
16.
go back to reference Huang CH, Ozisik MN (1992) Inverse problem of determining unknown wall heat flux in laminar flow through a parallel plate duct. Numerical Heat Transfer, Part A 21:55-70.CrossRef Huang CH, Ozisik MN (1992) Inverse problem of determining unknown wall heat flux in laminar flow through a parallel plate duct. Numerical Heat Transfer, Part A 21:55-70.CrossRef
17.
go back to reference Li HY, Yan WM (2000) Inverse convection problem for determining wall heat flux in annular duct flow. Journal of Heat Transfer 122:460-464.CrossRef Li HY, Yan WM (2000) Inverse convection problem for determining wall heat flux in annular duct flow. Journal of Heat Transfer 122:460-464.CrossRef
18.
go back to reference Lee KH, Baek SW, Kim KW (2008) Inverse radiation analysis using repulsive particle swarm optimization algorithm. International Journal of Heat and Mass Transfer 51:2772-2783.MATHCrossRef Lee KH, Baek SW, Kim KW (2008) Inverse radiation analysis using repulsive particle swarm optimization algorithm. International Journal of Heat and Mass Transfer 51:2772-2783.MATHCrossRef
19.
go back to reference Beck JV, Blackwell B, Clair C St (1985) Inverse Heat Conduction, Ill-Posed Problems. John Wiley & Sons, New York.MATH Beck JV, Blackwell B, Clair C St (1985) Inverse Heat Conduction, Ill-Posed Problems. John Wiley & Sons, New York.MATH
20.
21.
go back to reference Monod B, Collin A, Parent G, Boulet P (2009) Infrared radiative properties of vegetation involved in forest fires. Fire Safety Journal 44:88-95.CrossRef Monod B, Collin A, Parent G, Boulet P (2009) Infrared radiative properties of vegetation involved in forest fires. Fire Safety Journal 44:88-95.CrossRef
22.
go back to reference Àgueda A, Pastor E, Pérez Y, Planas E (2010) Experimental study of the emissivity of flames resulting from the combustion of forest fuels. International Journal of Thermal Sciences 49:543-554.CrossRef Àgueda A, Pastor E, Pérez Y, Planas E (2010) Experimental study of the emissivity of flames resulting from the combustion of forest fuels. International Journal of Thermal Sciences 49:543-554.CrossRef
23.
go back to reference Beyreis JR, Monsen HW, Abbasi AF (1971) Properties of wood crib flames. Fire Technology 7:145-155.CrossRef Beyreis JR, Monsen HW, Abbasi AF (1971) Properties of wood crib flames. Fire Technology 7:145-155.CrossRef
24.
go back to reference Hägglund B, Persson LE (1974) An Experimental Study of the Radiation from Wood Flames. Försvarets Forskningsanstalt Huvudenhet, FoU-brand, Stockholm. Hägglund B, Persson LE (1974) An Experimental Study of the Radiation from Wood Flames. Försvarets Forskningsanstalt Huvudenhet, FoU-brand, Stockholm.
25.
go back to reference Dupuy JL, Vachet P, Maréchal J, Meléndez J, de Castro AJ (2007) Thermal infrared emission-transmission measurements in flames from a cylindrical forest fuel burner. International Journal of Wildland Fire 16:324-340.CrossRef Dupuy JL, Vachet P, Maréchal J, Meléndez J, de Castro AJ (2007) Thermal infrared emission-transmission measurements in flames from a cylindrical forest fuel burner. International Journal of Wildland Fire 16:324-340.CrossRef
26.
go back to reference Morandini F, Santoni PA, Balbi JH (2001) The contribution of radiant heat transfer to laboratory-scale fire spread under the influences of wind and slope. Fire Safety Journal 36:519-543.CrossRef Morandini F, Santoni PA, Balbi JH (2001) The contribution of radiant heat transfer to laboratory-scale fire spread under the influences of wind and slope. Fire Safety Journal 36:519-543.CrossRef
27.
go back to reference Dupuy JL, Vachet P, Maréchal J (2006) Fuel bed temperature measurements in laboratory fires spreading over a slope. V International Conference on Forest Fire Research D.X. Viegas (ed). Dupuy JL, Vachet P, Maréchal J (2006) Fuel bed temperature measurements in laboratory fires spreading over a slope. V International Conference on Forest Fire Research D.X. Viegas (ed).
Metadata
Title
Metrological Tool for the Characterization of Flame Fronts Based on the Coupling of a Heat Flux Approach with Image Processing Data
Authors
S. Rudz
K. Chetehouna
O. Séro-Guillaume
Publication date
01-04-2011
Publisher
Springer US
Published in
Fire Technology / Issue 2/2011
Print ISSN: 0015-2684
Electronic ISSN: 1572-8099
DOI
https://doi.org/10.1007/s10694-010-0157-x

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